Lindblom A, Marsh T, Fauser C, Engel J, Paulsson M
M. E. Müller Institute for Biomechanics, University of Bern, Switzerland.
Eur J Biochem. 1994 Jan 15;219(1-2):383-92. doi: 10.1111/j.1432-1033.1994.tb19950.x.
A comprehensive characterization of laminin isoforms requires access to native preparations of laminins of a defined subunit composition. For this purpose an optimized isolation procedure was developed and shown to be broadly applicable to normal mammalian tissues. The protocol does in addition yield side fractions highly enriched in collagens XII and XIV. The major laminin purified from bovine kidney is indistinguishable from mouse Engelbreth-Holm-Swarm (EHS) tumor laminin in electron microscopy, but contains an A chain that migrates in a position intermediate to the Ae and the Am chains on SDS/PAGE. Antisera raised against mouse EHS-tumor laminin crossreact with B chains, but not with the A chain, of kidney laminin. Further, this A chain is not recognized by antisera raised against the Am chain. Laminins from heart and kidney both contain a significant subpopulation with a 190-kDa polypeptide identified as the B1s chain. The Am-containing laminins from heart and placenta differ morphologically from the Ae-containing EHS laminin in having one short arm that does not have the characteristic globule-rod-globule appearance. Further, the Am-containing laminins show a significantly higher thermal stability of the coiled-coil alpha-helical region in the long arm than does Ae-containing EHS laminin, indicating that certain combinations of laminin chains interact more strongly than others.
对层粘连蛋白亚型进行全面表征需要获得具有明确亚基组成的天然层粘连蛋白制剂。为此,开发了一种优化的分离程序,并证明其广泛适用于正常哺乳动物组织。该方案还产生了富含胶原蛋白XII和XIV的副产物。从牛肾中纯化的主要层粘连蛋白在电子显微镜下与小鼠Engelbreth-Holm-Swarm(EHS)肿瘤层粘连蛋白无法区分,但含有一条A链,其在SDS/PAGE上的迁移位置介于Ae链和Am链之间。针对小鼠EHS肿瘤层粘连蛋白产生的抗血清与肾层粘连蛋白的B链发生交叉反应,但不与A链发生交叉反应。此外,这条A链不被针对Am链产生的抗血清识别。来自心脏和肾脏的层粘连蛋白都含有一个显著的亚群,其中一种190 kDa的多肽被鉴定为B1s链。来自心脏和胎盘的含Am层粘连蛋白在形态上与含Ae的EHS层粘连蛋白不同,其一条短臂没有典型的球-杆-球外观。此外,含Am层粘连蛋白在长臂中的卷曲螺旋α-螺旋区域表现出比含Ae的EHS层粘连蛋白显著更高的热稳定性,这表明层粘连蛋白链的某些组合比其他组合相互作用更强。